Chemistry of Materials · 2005 · 101 citations · 24 references
NanoparticlesNanomedicineChemical EngineeringEngineeringMetal NanoparticlesNanomaterialsNanotechnologyNanobiotechnologyShell ThicknessPorous Gold NanospheresBiomedical EngineeringChemistryHollow Shell NanostructuresDialysis MembraneMetallic NanomaterialsCell ImagingControlled Transmetalation ReactionPlasmonic Material
Hollow shell nanostructures have numerous potential applications due to their interesting optical and electronic properties, which can be tuned by varying their shape, size, and shell thickness. In this paper we describe a simple galvanic replacement reaction (transmetalation reaction) involving sacrificial silver nanoparticles and Au(III) ions using a dialysis membrane. The dialysis membrane acts as a partial barrier that provides excellent control over the kinetics of reaction. This process results in the formation of porous gold nanospheres that improve the fluorescence in cell staining by offering an enhanced surface area for binding of the fluorescent dye, propidium iodide (PI). Such porous nanostructures could be ideal candidates for applications such as catalysis, enzyme immobilization, and drug delivery.
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Nanoengineering of optical resonances
Steven J. Oldenburg, Richard D. Averitt, Sarah L. Westcott et al. · Chemical Physics Letters · 1998 · 2.2K citations
Plasmonics, Engineering, Physics +4
Sang‐Wook Kim, Minsuk Kim, Wha Young Lee et al. · Journal of the American Chemical Society · 2002 · 1.4K citations
Materials Science, Hollow Palladium Spheres, Suzuki Cross +12